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使用铝电极和铁电极通过电凝聚法处理废纸回收废水。

Treatment of paper-recycling wastewater by electrocoagulation using aluminum and iron electrodes.

作者信息

Izadi Ali, Hosseini Morteza, Najafpour Darzi Ghasem, Nabi Bidhendi Gholamreza, Pajoum Shariati Farshid

机构信息

1Department of Chemical Engineering, Babol Noshirvani University of Technology, P.O.B. 484, Babol, Iran.

2Faculty of Environment, University of Tehran, Tehran, Iran.

出版信息

J Environ Health Sci Eng. 2018 Sep 15;16(2):257-264. doi: 10.1007/s40201-018-0314-6. eCollection 2018 Dec.

Abstract

Treatment of industrial wastewater by electrocoagulation (EC) is one of the most efficient methods to remove pollutants. Paper-recycling wastewater is a complex mixture containing toxic and recalcitrant substances, indicating complexity and difficulty of its treatment. The aim of the present study was to assess the effectiveness of paper-recycling wastewater treatment by EC process using aluminum (Al) and iron (Fe) plate electrodes. Removal of chemical oxygen demand (COD), total suspended solids (TSS), color and ammonia from paper-recycling mill effluent was evaluated at various electrolysis times (10-60 min), voltage (4-13 V) and pH (3.5-11). The optimum process conditions for the maximum removal of COD, TSS, color and ammonia from paper-recycling industry wastewater have been found to be pH value of 7, treatment time of 60 min and voltage of 10 V. Under optimum operating conditions, the removal capacities of COD, TSS, color and ammonia were 79.5%, 83.4%, 98.5% and 85.3%, respectively. It can be concluded that EC could be considered as an effective alternative for treatment of paper-recycling wastewater.

摘要

电凝聚(EC)法处理工业废水是去除污染物最有效的方法之一。废纸回收废水是一种含有有毒和难降解物质的复杂混合物,这表明其处理具有复杂性和难度。本研究的目的是评估使用铝(Al)和铁板电极的电凝聚工艺处理废纸回收废水的有效性。在不同的电解时间(10 - 60分钟)、电压(4 - 13伏)和pH值(3.5 - 11)下,对废纸回收厂废水的化学需氧量(COD)、总悬浮固体(TSS)、颜色和氨的去除情况进行了评估。已发现从废纸回收工业废水中最大程度去除COD、TSS、颜色和氨的最佳工艺条件为pH值7、处理时间60分钟和电压10伏。在最佳操作条件下,COD、TSS、颜色和氨的去除率分别为79.5%、83.4%、98.5%和85.3%。可以得出结论,电凝聚可被视为处理废纸回收废水的有效替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e53/6277348/946a11be4941/40201_2018_314_Fig1_HTML.jpg

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